机载激光多光谱扫描是激光雷达技术发展的新趋势

K. Bakuła
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引用次数: 26

摘要

机载激光扫描(机载激光扫描)是一种最精确的遥感技术,用于地形及其覆盖范围的数据采集。现代扫描仪最近已经能够扫描两个或多个通道(激光的频率)。这使得获得具有不同光谱特性的物体的不同区域的各种信息成为可能。本文以Optech公司的多光谱ALS系统Titan为例,介绍了数据分析的可能性,包括数字高程模型的精度和数据密度。研究结果证明了激光雷达在三个光谱波段具有较高的相对精度。数字地形模型(dtm)之间的平均差异小于0.03 m。数据密度分析显示了激光波长对数据密度的影响。对于绿色(G)、近红外(NIR)和短波红外(SWIR)激光,测试的点云的平均密度分别为每平方米25点、23点和20点。本文还讨论了利用激光强反射率正射影生成彩色复合材料的可能性,以及利用机载多光谱激光扫描数据进行土地覆盖测绘的分类能力,并与传统摄影测量技术进行了比较。
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Multispectral airborne laser scanning - a new trend in the development of LiDAR technology
Airborne laser scanning (ALS) is the one of the most accurate remote sensing techniques for data acquisition where the terrain and its coverage is concerned. Modern scanners have been able to scan in two or more channels (frequencies of the laser) recently. This gives the rise to the possibility of obtaining diverse information about an area with the different spectral properties of objects. The paper presents an example of a multispectral ALS system Titan by Optech with the possibility of data including the analysis of digital elevation models accuracy and data density. As a result of the study, the high relative accuracy of LiDAR acquisition in three spectral bands was proven. The mean differences between digital terrain models (DTMs) were less than 0.03 m. The data density analysis showed the influence of the laser wavelength. The points clouds that were tested had average densities of 25, 23 and 20 points per square metre respectively for green (G), near-infrared (NIR) and shortwave-infrared (SWIR) lasers. In this paper, the possibility of the generation of colour composites using orthoimages of laser intensity reflectance and its classification capabilities using data from airborne multispectral laser scanning for land cover mapping are also discussed and compared with conventional photogrammetric techniques.
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